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    • 1. 发明授权
    • Head slider having piezoelectric actuator
    • 具有压电致动器的头滑块
    • US06870709B2
    • 2005-03-22
    • US10101009
    • 2002-03-19
    • Takeaki ShimanouchiRyousuke KoishiTakahiro Imamura
    • Takeaki ShimanouchiRyousuke KoishiTakahiro Imamura
    • G11B5/54G11B5/60G11B21/21G11B5/56
    • G11B5/54G11B5/6005
    • A head slider includes a front rail having an air bearing surface and a step surface lower than the air bearing surface, provided on a disk faced surface in the vicinity of an air inflow end, a transducer provided in the vicinity of an air outflow end, and a groove for generating a negative pressure by expanding air once compressed by the front rail. The head slider further includes a piezoelectric actuator mounted on a head slider back surface on the opposite side of the disk faced surface excluding the vicinity of the air outflow end. By the piezoelectric actuator, the front rail and the neighboring portion are deformed in the direction toward the recording medium or away from the recording medium, and the positive pressure generated at the air bearing surface is regulated, whereby the floating amount of the head slider can be regulated.
    • 磁头滑块包括设置在空气流入端附近的盘面上的空气轴承表面和比空气轴承表面低的台阶表面的前轨,设置在空气流出端附近的换能器, 以及用于通过由前轨压缩而膨胀的空气来产生负压的槽。 磁头滑动器还包括安装在除了空气流出端附近的磁盘面对面的相对侧的磁头滑块后表面上的压电致动器。 通过压电致动器,前轨和相邻部分在朝向记录介质的方向或远离记录介质的方向上变形,并且调节在空气轴承表面处产生的正压,由此头滑动器的浮动量 被监管。
    • 4. 发明申请
    • Variable capacitor and method of making the same
    • 可变电容器及其制作方法
    • US20100246088A1
    • 2010-09-30
    • US12662177
    • 2010-04-05
    • Takeaki ShimanouchiMasahiko ImaiSatoshi Ueda
    • Takeaki ShimanouchiMasahiko ImaiSatoshi Ueda
    • H01G7/06B05D5/12
    • H01G5/18H01G5/38
    • A capacitor manufacturing method provides variable capacitors whose capacitances remain stable under the influence of temperature change. Such a variable capacitor includes a fixed electrode, a movable electrode film facing the fixed electrode, and an anchor portion that provides partial connection between the fixed electrode and the movable electrode film. For making this variable capacitor, a first electrode is formed to serve as the fixed electrode. Then, an anchor portion is formed on the fixed electrode, and a sacrifice film is formed to cover the fixed electrode but partially expose the anchor portion. A second electrode is formed on the sacrifice film to serve as the movable electrode film, bonded to the anchor portion. Finally, the sacrifice film is removed.
    • 电容器制造方法提供了可变电容器,其电容在温度变化的影响下保持稳定。 这种可变电容器包括固定电极,与固定电极相对的可动电极膜,以及在固定电极和可动电极膜之间提供部分连接的锚固部分。 为了制造该可变电容器,形成第一电极用作固定电极。 然后,在固定电极上形成锚定部,并且形成牺牲膜以覆盖固定电极,但是部分地露出锚定部。 在牺牲膜上形成第二电极,作为可动电极膜,结合到锚定部。 最后,牺牲片被去除。
    • 7. 发明申请
    • Variable capacitor and method of manufacturing variable capacitor
    • 可变电容器及制造可变电容器的方法
    • US20060171097A1
    • 2006-08-03
    • US11104453
    • 2005-04-13
    • Takeaki ShimanouchiMasahiko ImaiTadashi NakataniAnh NguyenSatoshi Ueda
    • Takeaki ShimanouchiMasahiko ImaiTadashi NakataniAnh NguyenSatoshi Ueda
    • H01G5/00
    • H01G5/18H01G5/16Y10T29/417Y10T29/435
    • The first movable electrode is flat, but the second movable electrode is deformed into a convex shape. A dielectric layer is placed on the facing surface of the second movable electrode. By adjusting a voltage to be applied between the first movable electrode and the second movable electrode, an arbitrary distance is secured between the two electrodes by the electrostatic attractive force generated between the two electrodes, and a desired electrostatic capacitance is obtained. When the distance between the two electrodes is shortened, first, at the center, a part of the first movable electrode and a part of the second movable electrode come into contact with each other with the dielectric layer between them. Then, the first movable electrode and the dielectric layer (second movable electrode) come into contact with each other successively from the contact part towards the periphery side, and the contact area gradually increases.
    • 第一可动电极是平坦的,但是第二可动电极变形为凸形。 电介质层被放置在第二可动电极的相对表面上。 通过调整施加在第一可动电极和第二可动电极之间的电压,通过在两个电极之间产生的静电吸引力确保两个电极之间的任意距离,并获得所需的静电电容。 当两个电极之间的距离缩短时,首先在中心处,第一可移动电极的一部分和第二可动电极的一部分彼此接触,并且它们之间具有介电层。 然后,第一可动电极和电介质层(第二可动电极)从接触部朝向周边依次相接触,接触面积逐渐增大。